80 Gb/s wavelength conversion using a quantum-dot semiconductor optical amplifier and optical filtering

Wavelength conversion of 40 Gb/s and 80 Gb/s return-to-zero on-off-keying signals using a quantum-dot semiconductor optical amplifier in combination with a delay interferometer as subsequent filter is demonstrated. The performance of the 80 Gb/s wavelength converter measured in terms of the bit-erro...

Full description

Saved in:
Bibliographic Details
Published inOptics express Vol. 19; no. 6; pp. 5134 - 5142
Main Authors Meuer, Christian, Schmidt-Langhorst, Carsten, Bonk, René, Schmeckebier, Holger, Arsenijević, Dejan, Fiol, Gerrit, Galperin, Andrey, Leuthold, Juerg, Schubert, Colja, Bimberg, Dieter
Format Journal Article
LanguageEnglish
Published United States 14.03.2011
Online AccessGet full text

Cover

Loading…
More Information
Summary:Wavelength conversion of 40 Gb/s and 80 Gb/s return-to-zero on-off-keying signals using a quantum-dot semiconductor optical amplifier in combination with a delay interferometer as subsequent filter is demonstrated. The performance of the 80 Gb/s wavelength converter measured in terms of the bit-error ratio demonstrated here is the highest reported up to now for quantum-dot semiconductor optical amplifiers. The typical fast gain dynamics manifests itself in open eye diagrams of the converted signal. The slow phase dynamics of the carrier reservoir however induces severe patterning and requires compensation. Adaptation of the free-spectral range of the delay interferometer is necessary in order to mitigate these phase effects and to achieve error-free wavelength conversion.
Bibliography:ObjectType-Article-1
SourceType-Scholarly Journals-1
ObjectType-Feature-2
content type line 23
ISSN:1094-4087
1094-4087
DOI:10.1364/OE.19.005134